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Related papers: The white dwarf planet WD J0914+1914 b: barricadin…

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The detection of a dust disc around G29-38 and transits from debris orbiting WD1145+017 confirmed that the photospheric trace metals found in many white dwarfs arise from the accretion of tidally disrupted planetesimals. The composition of…

Infrared excesses around metal polluted white dwarfs have been associated with the accretion of dusty, planetary material. This work analyses the available infrared data for an unbiased sample of white dwarfs and demonstrates that no more…

Earth and Planetary Astrophysics · Physics 2017-04-12 Amy Bonsor , Jay Farihi , Mark C. Wyatt , Rik van Lieshout

Previous studies indicate that more than a quarter of all white dwarf (WD) atmospheres are polluted by remnant planetary material, with some WDs being observed to accrete the mass of Pluto in 10^6 years. The short sinking timescale for the…

Earth and Planetary Astrophysics · Physics 2016-04-01 Matthew J. Payne , Dimitri Veras , Matthew J. Holman , Boris T. Gaensicke

In the past few decades, observations have revealed signatures of metals polluting the atmospheres of white dwarfs. The diffusion timescale for metals to sink from the atmosphere of a white dwarf is of the order of days for a…

Earth and Planetary Astrophysics · Physics 2018-07-10 Jeremy L. Smallwood , Rebecca G. Martin , Mario Livio , Stephen H. Lubow

White dwarfs (WDs) showing transits from orbiting planetary debris provide significant insights into the structure and dynamics of debris disks. This is a rare class of objects with only eight published systems. In this work, we perform a…

Metal pollution in white dwarf atmospheres may be the accreted remnants of planetary objects. After the discovery of disintegrating planetary objects transiting WD 1145+017 (Vanderburg et al. 2015), undergraduates in the University of…

We present infrared observations in search of a planet around the white dwarf, GD66. Time-series photometry of GD66 shows a variation in the arrival time of stellar pulsations consistent with the presence of a planet with mass > 2.4Mj. Any…

Astrophysics · Physics 2014-11-18 Fergal Mullally , William T. Reach , Steven Degennaro , Adam Burrows

About 25\% -50\% of white dwarfs (WDs) are found to be polluted by heavy elements. It has been argued that the pollution could be caused by the tidal disruption of an approaching planet around the WD, during which a large number of clumps…

Earth and Planetary Astrophysics · Physics 2024-10-17 Abdusattar Kurban , Xia Zhou , Na Wang , Yong-Feng Huang , Yu-Bin Wang , Nurimangul Nurmamat

(Abridged) We present the results of the first unbiased survey for metal pollution among H-atmosphere (DA) white dwarfs with cooling ages of 20-200 Myr and 17000K < Teff < 27000K, using HST COS in the far UV between 1130 and 1435 A. The…

Solar and Stellar Astrophysics · Physics 2014-06-04 Detlev Koester , Boris T. Gänsicke , Jay Farihi

At least 25% of white dwarfs show atmospheric pollution by metals, sometimes accompanied by detectable circumstellar dust/gas discs or (in the case of WD 1145+017) transiting disintegrating asteroids. Delivery of planetesimals to the white…

Earth and Planetary Astrophysics · Physics 2018-03-14 Alexander J Mustill , Eva Villaver , Dimitri Veras , Boris T Gänsicke , Amy Bonsor

This paper investigates the frequency of transiting planetary systems around metal-polluted white dwarfs using high-cadence photometry from ULTRACAM and ULTRASPEC on the ground, and space-based observations with TESS. Within a sample of 313…

Although 25%-50% of white dwarfs (WDs) display evidence for remnant planetary systems, their orbital architectures and overall sizes remain unknown. Vibrant close-in (~1 Solar radius) circumstellar activity is detected at WDs spanning many…

Earth and Planetary Astrophysics · Physics 2015-06-23 Dimitri Veras , Boris T. Gaensicke

A significant fraction of white dwarfs (WDs) exhibit signs of ongoing accretion of refractory elements at rates $\sim10^3$--$10^7$ kg s$^{-1}$, among which, 37 WDs were detected to harbor dusty debris disks. Such a concurrence requires not…

Earth and Planetary Astrophysics · Physics 2021-05-17 Yun Zhang , Shang-Fei Liu , Douglas N. C. Lin

Planets orbiting in the habitable zones of white dwarfs have recently been proposed as promising targets for biosignature searches. However, since the white dwarf habitable zone resides at 0.01 - 0.1 AU, planets residing there are subject…

Earth and Planetary Astrophysics · Physics 2025-10-01 Eva Stafne , Juliette Becker

To date the search for habitable Earth-like planets has primarily focused on nuclear burning stars. I propose that this search should be expanded to cool white dwarf stars that have expended their nuclear fuel. I define the continuously…

Earth and Planetary Astrophysics · Physics 2011-03-30 Eric Agol

White dwarfs that accrete the debris of tidally disrupted asteroids provide the opportunity to measure the bulk composition of the building blocks, or fragments, of exoplanets. This technique has established a diversity in compositions…

Earth and Planetary Astrophysics · Physics 2021-02-15 Mark A. Hollands , Pier-Emmanuel Tremblay , Boris T. Gänsicke , Detlev Koester , Nicola P. Gentile-Fusillo

White dwarfs which exhibit transit signatures of planetary debris and accreted planetary material provide exceptional opportunities to probe the material composition and dynamical structure of planetary systems. Although previous…

Earth and Planetary Astrophysics · Physics 2021-07-14 Catriona H. McDonald , Dimitri Veras

Planetary debris is observed in the atmospheres of over 1,000 white dwarfs, and two white dwarfs are now observed to contain orbiting minor planets. Exoasteroids and planetary core fragments achieve orbits close to the white dwarf through…

Earth and Planetary Astrophysics · Physics 2019-09-18 Kyriaki I. Antoniadou , Dimitri Veras

The search for transiting habitable exoplanets has broadened to include several types of stars that are smaller than the Sun in an attempt to increase the observed transit depth and hence the atmospheric signal of the planet. Of all…

Solar and Stellar Astrophysics · Physics 2016-06-01 P. H. Sandhaus , J. H. Debes , J. Ely , D. C. Hines , M. Bourque